Phosphorylation of Bcl10 Negatively Regulates T-Cell Receptor-Mediated NF-κB Activation

  • Zeng H
  • Di L
  • Fu G
  • et al.
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Abstract

Bcl10 (B-cell lymphoma 10) is an adaptor protein comprised of an N-terminal caspase recruitment domain and a C-terminal serine/threonine-rich domain. Bcl10 plays a critical role in antigen receptor-mediated NF-kappaB activation and lymphocyte development and functions. Our current study has discovered that T-cell activation induced monophosphorylation and biphosphorylation of Bcl10 and has identified S138 within Bcl10 as one of the T-cell receptor-induced phosphorylation sites. Alteration of S138 to an alanine residue impaired T-cell activation-induced ubiquitination and subsequent degradation of Bcl10, ultimately resulting in prolongation of TCR-mediated NF-kappaB activation and enhancement of interleukin-2 production. Taken together, our findings demonstrate that phosphorylation of Bcl10 at S138 down-regulates Bcl10 protein levels and thus negatively regulates T-cell receptor-mediated NF-kappaB activation.

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Zeng, H., Di, L., Fu, G., Chen, Y., Gao, X., Xu, L., … Wen, R. (2007). Phosphorylation of Bcl10 Negatively Regulates T-Cell Receptor-Mediated NF-κB Activation. Molecular and Cellular Biology, 27(14), 5235–5245. https://doi.org/10.1128/mcb.01645-06

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